Astrocytes control quiescent NSC reactivation via GPCR signaling-mediated F-actin remodeling

Author:

Lin Kun-YangORCID,Gujar Mahekta R.ORCID,Lin JiaenORCID,Ding Wei YungORCID,Huang JiawenORCID,Gao YangORCID,Tan Ye SingORCID,Teng XiangORCID,Christine Low Siok LanORCID,Kanchanawong PakornORCID,Toyama YusukeORCID,Wang HongyanORCID

Abstract

AbstractThe transitioning of neural stem cells (NSCs) between quiescent and proliferative states is fundamental for brain development and homeostasis. Defects in NSC reactivation are associated with neurodevelopmental disorders.Drosophilaquiescent NSCs extend an actin-rich primary protrusion toward the neuropil. However, the function of the actin cytoskeleton during NSC reactivation is unknown. Here, we reveal the fine F-actin structures in the protrusions of quiescent NSCs by expansion and super-resolution microscopy. We show that F-actin polymerization promotes the nuclear translocation of Mrtf, a microcephaly-associated transcription factor, for NSC reactivation and brain development. F-actin polymerization is regulated by a signaling cascade composed of G-protein-coupled receptor (GPCR) Smog, G-protein αq subunit, Rho1 GTPase, and Diaphanous (Dia)/Formin during NSC reactivation. Further, astrocytes secrete a Smog ligand Fog to regulate Gαq-Rho1-Dia-mediated NSC reactivation. Together, we establish that the Smog-Gαq-Rho1 signaling axis derived from astrocytes, a NSC niche, regulates Dia-mediated F-actin dynamics in NSC reactivation.

Publisher

Cold Spring Harbor Laboratory

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